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rdf:type
lifeskim:mentions
pubmed:issue
18
pubmed:dateCreated
2007-11-12
pubmed:abstractText
We show that resonance fluorescence, i.e., the resonant emission of a coherently driven two-level system, can be realized with a semiconductor quantum dot. The dot is embedded in a planar optical microcavity and excited in a waveguide mode so as to discriminate its emission from residual laser scattering. The transition from the weak to the strong excitation regime is characterized by the emergence of oscillations in the first-order correlation function of the fluorescence, g(tau), as measured by interferometry. The measurements correspond to a Mollow triplet with a Rabi splitting of up to 13.3 microeV. Second-order correlation measurements further confirm nonclassical light emission.
pubmed:language
eng
pubmed:journal
pubmed:status
PubMed-not-MEDLINE
pubmed:month
Nov
pubmed:issn
0031-9007
pubmed:author
pubmed:issnType
Print
pubmed:day
2
pubmed:volume
99
pubmed:owner
NLM
pubmed:authorsComplete
Y
pubmed:pagination
187402
pubmed:year
2007
pubmed:articleTitle
Resonance fluorescence from a coherently driven semiconductor quantum dot in a cavity.
pubmed:affiliation
Department of Physics, The University of Texas at Austin, Austin, Texas 78712, USA.
pubmed:publicationType
Journal Article